Great Ormond Street Hospital
London, WC1N 3JH, United Kingdom
Location status: Recruiting
NCT Number: NCT05092685
Ornithine transcarbamylase deficiency (OTCD) is an inherited metabolic liver disease which means that the body cannot maintain normal levels of ammonia. Ammonia levels can rise (called hyperammonaemic decompensations) which can be life-threatening and may result in impaired neurological development in children. OTCD is a rare genetic disorder characterised by complete or partial lack of the enzyme ornithine transcarbamylase (OTC).
Interested in participating?
Request Info0 day–16 year
All sexes
Interventional
Phase 1 / Phase 2
London, WC1N 3JH, United Kingdom
Location status: Recruiting
OTC is a key element of the urea cycle, which is how the liver breaks down and removes extra nitrogen from the body. For people with OTCD the extra nitrogen builds up in the form of excess ammonia (hyperammonemia) in the blood.
Ammonia is toxic and people with OTCD suffer 'hyperammonaemic decompensations' when ammonia levels in the blood rise too high. The symptoms of these hyperammonaemic decompensations include vomiting, impaired movement, and progressive lethargy. If left untreated these hyperammonaemic decompensations may result in life-threatening complications or coma. OTCD is managed with drugs that reduce the amount of ammonia in the blood (ammonia-scavenging drugs) and a low protein diet. However, sometimes hyperammonaemic decompensations still occur.
Liver transplants for people with OTCD can be life-saving but there may be a long wait for a suitable liver and neurological damage may occur before a liver transplant is possible.
The HORACE study is testing a new gene therapy (AAVLK03hOTC) which specifically targets the liver so that it can start making OTC. The investigators hope that a single injection of gene therapy for children with OTCD could help the liver work normally and reduce hyperammonaemic decompensations and their associated risks.
This gene-therapy treatment could serve as a 'bridge-to-transplant' where children could grow up in a metabolically stable condition until a liver transplant is possible. This could minimise longer-term neurological damage caused by hyperammonaemic decompensations.
Healthy volunteers accepted: No
Only the study team can determine whether someone qualifies for participation.
Inclusion criteria
Exclusion criteria
Peripheral intravenous infusion of AAVLK03hOTC.
Other names: Also known as ssAAV-LK03.hAAT.hcoOTC
Time frame: 12 months post-infusion
Incidence of adverse events (AEs), treatment-related adverse events and serious adverse events (SAEs) for each dosing group assessed by severity and relationship to study product.
Time frame: Over 12 months post-infusion
Time frame: Over 12 months post-infusion
Change from baseline level of humoral and cellular immune responses the AAV-LK03 capsid.
Time frame: Over 12 months post-infusion
Time frame: Over 12 months post-infusion
Time frame: Over 12 months post-infusion
Clinical parameters
Time frame: Over 12 months post-infusion
Clinical parameters
Time frame: Over 12 months post-infusion
Clinical parameters
Time frame: Over 12 months post-infusion
Biological parameters
Time frame: Over 12 months post-infusion
Biological parameters
Time frame: Over 12 months post-infusion
Biological parameters
Time frame: Over 12 months post-infusion
Functional parameters:
Time frame: Over 12 months post-infusion
Time frame: Over 12 months post-infusion
Time frame: Over 12 months post-infusion
Time frame: Over 12 months post-infusion
Time frame: Over 12 months post-infusion
Time frame: Over 12 months post-infusion
Change in quality of life, as measured by the Paediatric Quality of Life inventory
Time frame: At 12 months post-infusion
Quantification of viral vector integration in hepatocytes, from liver samples
Time frame: Over 12 months post-infusion
Time frame: Over 12 months post-infusion
Assessment of vector genome copy numbers in liver samples
Contact information is provided by the study sponsor or research team.
University College, London
Other
Phase I/II Open Label, Multicentre Clinical Trial to Assess Safety and Efficacy of AAVLK03hOTC for Paediatric Patients With Ornithine Transcarbamylase Deficiency.
Acronym: HORACE
OpenTrials presents study information sourced from ClinicalTrials.gov. The official registry record should be consulted for the latest information.
View the official ClinicalTrials.gov record (opens in a new tab)This listing is for discovery and informational purposes only. It is not medical advice, does not guarantee that a study is recruiting, and does not determine eligibility. Contact the study team and a qualified healthcare professional when considering participation.
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